The Muon Spectrometer of the ATLAS detector will be significantly modified during the Phase-II upgrade in order to maintain low-momentum trigger thresholds at an acceptable trigger rate also in the increased particle rates, integrated radiation and pile-up of the High Luminosity LHC runs. The new requirements for trigger rate and latency impose the replacement of the current trigger and readout electronics of the Resistive Plate Chambers. New Data Collector and Transmitter boards will be installed to collect and digitize the Resistive Plate Chambers data. This paper presents the new trigger and readout scheme of the Resistive Plate Chambers and the results of a test bench developed to evaluate the data transmission between the Data Collector and Transmitter board and its back-end counterpart. The communication test bench has been performed using evaluation boards implementing an emulator of the Low Power Gigabit Transceiver, the Data Collector and Transmitter component that handles the data transmission.
Upgraded Data Readout and Transmission Electronics for the Resistive Plate Chambers of the ATLAS Muon Trigger System for the High Luminosity LHC / Corradi, M.; Gkountoumis, P.; Kyriakis-Bitzaros, E.; Longarini, I.; Mesolongitis, I.; Morodei, F.; Vari, R.; Zachariadou, K.. - (2022), pp. 1-4. (Intervento presentato al convegno 2021 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC) tenutosi a Online) [10.1109/NSS/MIC44867.2021.9875551].
Upgraded Data Readout and Transmission Electronics for the Resistive Plate Chambers of the ATLAS Muon Trigger System for the High Luminosity LHC
Longarini, I.;Morodei, F.
;
2022
Abstract
The Muon Spectrometer of the ATLAS detector will be significantly modified during the Phase-II upgrade in order to maintain low-momentum trigger thresholds at an acceptable trigger rate also in the increased particle rates, integrated radiation and pile-up of the High Luminosity LHC runs. The new requirements for trigger rate and latency impose the replacement of the current trigger and readout electronics of the Resistive Plate Chambers. New Data Collector and Transmitter boards will be installed to collect and digitize the Resistive Plate Chambers data. This paper presents the new trigger and readout scheme of the Resistive Plate Chambers and the results of a test bench developed to evaluate the data transmission between the Data Collector and Transmitter board and its back-end counterpart. The communication test bench has been performed using evaluation boards implementing an emulator of the Low Power Gigabit Transceiver, the Data Collector and Transmitter component that handles the data transmission.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.